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Combustion synthesis of boron nitride via magnesium reduction using additives

机译:添加剂镁还原燃烧合成氮化硼

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This study is aimed at enhancing the product yield in combustion synthesis of h-BN using Mg reduction of B2O3 as the boron source under a low N-2 pressure by using additives. The reactant powders and the additives were placed in perforated aluminum containers without pressing. Due to a loose and highly porous structure of the powder stack, the surrounding N-2 can penetrate easily into it and the N-2 generated by NaN3 or C3H6N6 escapes easily, addition of these two additives only increases slightly the product yield in the low content region but decreases the product yield in the high content region due to decreasing temperature. Addition of inert particles (i.e., MgO or BN) increases the product yield only when the temperature is higher than the melting point of boron, under which coalescence of molten boron is suppressed due to capillary spreading of the molten boron on the particles. When the temperature is lower than the melting Point of boron, addition of the inert particles decreases the product yield because of their cooling effect. NH4X (X= Cl or Br) was found the most effective in enhancing the product yield because it creates an easier route for the nitridation of boron by first converting boron to BXx, which then reacts with N-2 under the reduction of H-2. A product yield of 67% was achieved by simultaneous addition of NH4Cl and BN under a N-2 pres ure of 1.6 MPa. (C) 2014 Elsevier Ltd and Techna Group S.r.l. All rights reserved.
机译:这项研究旨在通过在低N-2压力下通过使用添加剂将M2还原的B2O3作为硼源的Mg还原来提高h-BN燃烧合成中的产物收率。将反应物粉末和添加剂不经加压而置于带孔的铝容器中。由于粉末堆的疏松和高度多孔的结构,周围的N-2可以很容易地渗入其中,并且由NaN3或C3H6N6生成的N-2容易逸出,这两种添加剂的添加只会在较低的温度下稍微提高产品收率含量区域,但由于温度降低,降低了高含量区域的产品产量。仅当温度高于硼的熔点时,惰性颗粒(即,MgO或BN)的添加才提高产物产率,在该温度下,由于熔融硼在颗粒上的毛细扩散而抑制了熔融硼的聚结。当温度低于硼的熔点时,惰性粒子的添加由于其冷却作用而降低了产物的产率。发现NH4X(X = Cl或Br)对提高产品收率最有效,因为它首先将硼转化为BXx,然后在H-2的还原下与N-2反应,从而为硼的氮化创造了一条更容易的途径。 。通过在1.6 MPa的N-2压力下同时添加NH4Cl和BN,可以达到67%的产品收率。 (C)2014 Elsevier Ltd和Techna Group S.r.l.版权所有。

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